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Created with Pixso. Synthetic Sapphire Boule , Kyropoulos (KY) Method Grown 80kg 260kg 300kg 400kg

Synthetic Sapphire Boule , Kyropoulos (KY) Method Grown 80kg 260kg 300kg 400kg

ブランド名: ZMSH
モデル番号: サファイアクリスタルインゴット
支払条件: T/T
詳細情報
起源の場所:
中国
証明:
rohs
材料::
単結晶のサファイア
溶融点::
2050°C
硬度::
モース硬度 90
色:
透明
サイズ:
カスタマイズされた
厚さ:
カスタマイズされた
ハイライト:

Kyropoulos Sapphire Boule

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Synthetic Sapphire Boule Hardness 9.0

製品の説明
Product Overview:

Sapphire Crystal Boule, a synthetic single-crystal alumina (α-Al₂O₃), is grown using advanced methods such as the Kyropoulos, Czochralski (CZ), or Heat Exchange Method (HEM). With exceptional hardness, broad light transmission, and superior chemical stability, it is an essential material in optics, semiconductors, consumer electronics, and industrial sectors.

Technical Specifications:
Property Specification
Crystal Structure Monocrystalline
Refractive Index 1.768 (ordinary ray, 633 nm) / 1.760 (extraordinary ray, 633 nm)
Hardness Mohs 9.0
Transparency Fully transparent (0.15–5.5 μm wavelength range)
Density 3.98 g/cm³
Common Sizes 2–12 inches in diameter
Synthetic Sapphire Boule , Kyropoulos (KY) Method Grown 80kg 260kg 300kg 400kg 0Synthetic Sapphire Boule , Kyropoulos (KY) Method Grown 80kg 260kg 300kg 400kg 1
 
 
Key Characteristics:
 
Optical Performance:
  • Wide transmittance range (0.15–5.5 μm) for deep UV to mid-IR applications.
  • Low birefringence (0.008) and refractive index of 1.76@589 nm, making it ideal for lenses and windows.
  • Compatible with anti-reflection (AR), high-reflection (HR), and bandpass coatings.
Mechanical Strength:
  • Scratch-resistant (Mohs 9) with high compressive strength (>2 GPa).
  • Bend strength exceeding 400 MPa, suitable for wafers, bearings, and industrial components.
Thermal Stability:
  • Melting point of 2050°C; operational temperature up to 1900°C in inert gas environments.
  • Thermal conductivity of 35 W/(m·K); low thermal expansion coefficient (5.8*10⁻⁶/K).
Chemical Resistance:
  • Resistant to acids and alkalis (except hydrofluoric acid and hot concentrated sulfuric acid).
  • Ideal for aerospace, nuclear, and harsh environmental applications.
Applications:
  • Semiconductors: LED and Micro-LED substrates, plasma-resistant device windows.
  • Optics/Lasers: High-power laser windows, IR optics for defense systems.
  • Consumer Electronics: Scratch-resistant covers for smartwatches and smartphone lenses.
  • Industrial: Precision bearings, deep-sea pressure windows, and space-grade components.
ZMSH Services:
  • Custom Growth: Producing 2–12-inch boules via Kyropoulos, CZ, or HEM methods.
  • Precision Machining: Manufacturing wafers, optical windows, and custom-shaped parts.
  • Coating Solutions: Offering AR, HR, and filter coatings for enhanced optical performance.
  • Testing & Support: Providing defect analysis, environmental stability validation, and technical consultation.

 

Frequently Asked Questions (Q&A):

Q1: Why is sapphire expensive?

Sapphire's high cost is due to the need for high-purity growth processes and specialized cutting/polishing techniques required to handle its extreme hardness.

Q2: What are the primary uses of sapphire boules?

Sapphire boules are mainly used as LED substrates, optical components, and durable covers for consumer electronics.